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Well-Dispersed Garnet Crystallites for Applications in Solid-State Li–S Batteries

机译:用于固态LI-S电池的应用良好的石榴石晶体

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摘要

A uniform ceramic tape of well-dispersed garnet-type Li_(6.4)La_(3)Zr_(1.4)Ta_(0.6)O_(12) particles (LLZTO) with a high solid content of 70 wt % is prepared as an electrolyte in solid-state Li–S batteries. The use of appropriate dispersants is crucial for achieving fine dispersion and uniform distribution of LLZTO particles in the ceramic tape. This leads to improved surface flatness and mechanical strength of the ceramic tape. Moreover, the ionic conductivity increases remarkably at the same time from 10~(–5) to 10~(–4) to 10~(–4) to 10~(–3) S cm~(–1), and the Li~(+) transport number doubles from 0.35 to 0.70. The Li–S battery constructed with the dispersed LLZTO electrolyte shows an adequate capacity of above 600 mA h g~(–1) after 100 cycles at a discharge current of 84 mA g~(–1), and it is capable of charging/discharging at a high current of 1672 mA g~(–1). In comparison, the battery with a nondispersed LLZTO electrolyte functions only at the lower current of 84 mA g~(–1) and fails to work after 25 cycles.
机译:制备了均匀分散的石榴石型Li_6.4 La_3Zr_1.4 Ta_0.6)O_12颗粒(LLZTO)陶瓷带,其固体含量高达70 wt%,用作固态锂硫电池的电解液。使用合适的分散剂对于实现LLZTO颗粒在陶瓷带中的精细分散和均匀分布至关重要。这将提高陶瓷胶带的表面平整度和机械强度。同时,离子电导率也显著增加,从10~(-5)增加到10~(-4)增加到10~(-4)增加到10~(-3)scm~(-1),锂离子的输运数从0.35增加到0.70。采用分散的LLZTO电解质制成的锂硫电池在放电电流为84 mA g~(-1)的情况下,经过100次循环后,显示出超过600 mA h g~(-1)的足够容量,并且能够在1672 mA g~(-1)的大电流下充放电。相比之下,使用非分散LLZTO电解液的电池只能在84 mA g~(-1)的较低电流下工作,并且在25次循环后无法工作。

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